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The rRNA methyltransferase Bud23 shows functional interaction with components of the SSU processome and RNase MRP

机译:rRNA甲基转移酶Bud23显示与SSU进程组和RNase MRP的功能相互作用

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Bud23 is responsible for the conserved methylation of G1575 of 18S rRNA, in the P-site of the small subunit of the ribosome. bud23Δ mutants have severely reduced small subunit levels and showa general failure in cleavage at site A2 during rRNA processing. Site A2 is the primary cleavage site for separating the precursors of 18S and 25S rRNAs. Here, we have taken a genetic approach to identify the functional environment of BUD23. We found mutations in UTP2 and UTP14, encoding components of the SSU processome, as spontaneous suppressors of a bud23Δ mutant. The suppressors improved growth and subunit balance and restored cleavage at site A2. In a directed screen of 50 ribosomal trans-acting factors, we identified strong positive and negative genetic interactions with components of the SSU processome and strong negative interactions with components of RNase MRP. RNase MRP is responsible for cleavage at site A3 in pre-rRNA, an alternative cleavage site for separating the precursor rRNAs. The strong negative genetic interaction between RNase MRP mutants and bud23Δ is likely due to the combined defects in cleavage at A2 and A3. Our results suggest that Bud23 plays a role at the time of A2 cleavage, earlier than previously thought. The genetic interaction with the SSU processome suggests that Bud23 could be involved in triggering disassembly of the SSU processome, or of particular subcomplexes of the processome.
机译:Bud23负责18S rRNA G1575在核糖体小亚基的P位点的保守甲基化。 bud23Δ突变体已严重降低了小亚基水平,并在rRNA加工过程中显示了位点A2切割的一般失败。位点A2是分离18S和25S rRNA前体的主要切割位点。在这里,我们采用了遗传方法来识别BUD23的功能环境。我们发现UTP2和UTP14编码SSU加工组的组成部分中的突变是bud23Δ突变体的自发抑制因子。抑制因子改善了生长和亚基平衡,并恢复了位点A2的裂解。在50个核糖体反式作用因子的定向筛选中,我们鉴定出与SSU加工组的组分之间存在强烈的正向和负向遗传相互作用,与RNase MRP组分之间存在强烈的负向相互作用。 RNase MRP负责pre-rRNA中A3位点的切割,这是分离前体rRNA的另一种切割位点。 RNase MRP突变体与bud23Δ之间强烈的负遗传相互作用很可能是由于A2和A3处的切割缺陷共同造成的。我们的结果表明,Bud23在A2裂解时起了作用,比以前认为的要早。与SSU Processome的遗传相互作用表明Bud23可能参与触发SSU processome或Processome特定亚复合物的拆卸。

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